Panlilio Hannah, Rice Charles V
Department of Chemistry and Biochemistry, Stephenson Life Sciences Research Center, University of Oklahoma, Norman, Oklahoma, USA.
Biotechnol Bioeng. 2021 Jun;118(6):2129-2141. doi: 10.1002/bit.27760. Epub 2021 Mar 27.
Advances in biotechnology to treat and cure human disease have markedly improved human health and the development of modern societies. However, substantial challenges remain to overcome innate biological factors that thwart the activity and efficacy of pharmaceutical therapeutics. Until recently, the importance of extracellular DNA (eDNA) in biofilms was overlooked. New data reveal its extensive role in biofilm formation, adhesion, and structural integrity. Different approaches to target eDNA as anti-biofilm therapies have been proposed, but eDNA and the corresponding biofilm barriers are still difficult to disrupt. Therefore, more creative approaches to eradicate biofilms are needed. The production of eDNA often originates with the genetic material of bacterial cells through cell lysis. However, genomic DNA and eDNA are not necessarily structurally or compositionally identical. Variations are noteworthy because they dictate important interactions within the biofilm. Interactions between eDNA and biofilm components may as well be exploited as alternative anti-biofilm strategies. In this review, we discuss recent developments in eDNA research, emphasizing potential ways to disrupt biofilms. This review also highlights proteins, exopolysaccharides, and other molecules interacting with eDNA that can serve as anti-biofilm therapeutic targets. Overall, the array of diverse interactions with eDNA is important in biofilm structure, architecture, and stability.
生物技术在治疗和治愈人类疾病方面的进展显著改善了人类健康和现代社会的发展。然而,要克服阻碍药物治疗活性和疗效的内在生物学因素,仍存在重大挑战。直到最近,细胞外DNA(eDNA)在生物膜中的重要性一直被忽视。新数据揭示了其在生物膜形成、粘附和结构完整性中的广泛作用。已经提出了将eDNA作为抗生物膜疗法的不同方法,但eDNA和相应的生物膜屏障仍然难以破坏。因此,需要更具创造性的方法来根除生物膜。eDNA的产生通常源于细菌细胞通过细胞裂解的遗传物质。然而,基因组DNA和eDNA在结构或组成上不一定相同。这些差异值得注意,因为它们决定了生物膜内的重要相互作用。eDNA与生物膜成分之间的相互作用也可以作为替代抗生物膜策略加以利用。在这篇综述中,我们讨论了eDNA研究的最新进展,强调了破坏生物膜的潜在方法。这篇综述还强调了与eDNA相互作用的蛋白质、胞外多糖和其他分子,它们可以作为抗生物膜治疗靶点。总体而言,与eDNA的一系列不同相互作用在生物膜结构、架构和稳定性方面很重要。